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Synergistic chemo-immunotherapy for osteosarcoma via a pH-responsive multi-component nanoparticle system

Affiliation
Department of Spine Surgery ,Affiliated Hospital of Jiangsu University ,Zhenjiang ,Jiangsu ,China
Li, Dapeng;
Affiliation
Department of Spine Surgery ,Affiliated Hospital of Jiangsu University ,Zhenjiang ,Jiangsu ,China
Li, Yuanfan;
Affiliation
Department of Spine Surgery ,Affiliated Hospital of Jiangsu University ,Zhenjiang ,Jiangsu ,China
Cang, Jie;
Affiliation
Department of Spine Surgery ,Affiliated Hospital of Jiangsu University ,Zhenjiang ,Jiangsu ,China
Yan, Xianwen;
Affiliation
Department of Spine Surgery ,Affiliated Hospital of Jiangsu University ,Zhenjiang ,Jiangsu ,China
Wu, Feipeng;
Affiliation
School of Pharmacy ,Jiangsu University ,Zhenjiang ,Jiangsu ,China
Sun, Xuan;
Affiliation
Department of Orthopedics ,Affiliated Jintan Hospital of Jiangsu University ,Jintan ,Jiangsu ,China
Zhang, Wenchao

Introduction Osteosarcoma (OS) is the most common primary malignant bone tumor in pediatric populations. Its treatment is complicated by chemotherapy-induced toxicity and limited induction of immunogenic cell death (ICD). Methods To address these challenges, we developed a pH-responsive, multi-component nanoparticle system designed to co-deliver doxorubicin (DOX), monophosphoryl lipid A (MPLA), and a PD-1/PD-L1-targeting peptide, integrated with the immune-modulating polymer PEG-PC7A. The system was optimized using both one-factor-at-a-time (OFAT) and Box-Behnken design (BBD). Results The optimized nanoparticles had a hydrodynamic size of 110 nm, high encapsulation efficiency (97.15%), and pH-sensitive drug release (91% at pH 6.5). In vitro studies showed enhanced ICD markers, including calreticulin exposure and ATP/HMGB1 release, aswell as synergistic dendritic cell maturation via dual STING/TLR4 pathway activation. In an orthotopic LM8 osteosarcoma model, the nanoparticles significantly suppressed tumor growth, promoted cytotoxic T lymphocyte infiltration, reduced regulatory T cells, and established long-term immune memory. Discussion The combination of ICD induction, innate immune activation, and checkpoint blockade reprogrammed the tumor microenvironment, amplifying anti-tumor immune responses. These results demonstrate the potential of this multifunctional nanoparticle platform as an effective immunochemotherapeutic strategy for osteosarcoma, offering enhanced therapeutic efficacy and reduced systemic toxicity.

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License Holder: Copyright © 2025 Li, Li, Cang, Yan, Wu, Sun and Zhang.

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